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Integrative Epigenetic and Gene Expression Analysis of Renal Tumor Progression to Metastasis

机译:肾脏肿瘤进展对转移的一体化表观遗传和基因表达分析

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The Cancer Genome Atlas (TCGA) and other large-scale genomic data pipelines have been integral to the current understanding of the molecular events underlying renal cell carcinoma (RCC). These data networks have focused mostly on primary RCC, which often demonstrates indolent behavior. However, metastatic disease is the major cause of mortality associated with RCC and data sets examining metastatic tumors are sparse. Therefore, a more comprehensive analysis of gene expression and DNA methylome profiling of metastatic RCC in addition to primary RCC and normal kidney was performed. Integrative analysis of the methylome and transcriptome identified over 30 RCC-specific genes whose mRNA expression inversely correlated with promoter methylation, including several known targets of hypoxia inducible factors. Notably, genes encoding several metabolism-related proteins were identified as differentially regulated via methylation including hexokinase 2, aldolase C, stearoyl-CoA desaturase, and estrogen-related receptor-g (ESRRG), which has a known role in the regulation of nuclear-encoded mitochondrial metabolism genes. Several gene expression changes could portend prognosis in the TCGA cohort. Mechanistically, ESRRG loss occurs via DNA methylation and histone repressive silencing mediated by the polycomb repressor complex 2. Restoration of ESRRG in RCC lines suppresses migratory and invasive phenotypes independently of its canonical role in mitochondrial metabolism.
机译:癌症基因组地图集(​​TCGA)和其他大规模的基因组数据管道对目前对肾细胞癌(RCC)的分子事件的理解一致。这些数据网络主要集中在主RCC上,这通常表现出惰性行为。然而,转移性疾病是与RCC相关的主要原因,数据组检查转移性肿瘤稀疏。因此,除初级RCC和正常肾外,转移rCC的基因表达和DNA甲基汞谱的更全面的分析。对甲基杂物和转录物的一致性分析鉴定出超过30个rcc特异性基因,其mRNA表达与启动子甲基化与促进剂甲基化相反,包括几种已知的缺氧诱导因子靶标。值得注意的是,编码若干代谢相关蛋白质的基因被鉴定为通过甲基化的差异调节,包括六酮酶2,醛糖酶C,硬脂酰-COA去饱和酶和雌激素相关的受体-g(ESRRG),其在核 - 的调节中具有已知作用编码的线粒体代谢基因。几种基因表达变化可能会在TCGA队列中移植预后。机械地,通过DNA甲基化和由Polycomb阻遏物复合物介导的DNA甲基化和组蛋白抑制沉默发生的ESRRG损失。rcc系中ESRRG的恢复抑制了对线粒体代谢中的规范作用的迁移和侵袭性表型。

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